An injection molding machine includes a safety door and a guide for slidably guiding the safety door in a direction of opening and closing a mold of the injection molding machine. The guide includes: a first guide part fixed to a machine base of the injection molding machine; a second guide part arranged on the safety door's closing direction side of the first guide part and configured to be removable from the machine base; and a coupling configured to connect the first guide part and the second guide part so that the second guide part can be moved onto the first guide part.
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1. An injection molding machine, comprising:
a safety door; and
a guide configured to slidably guide the safety door in a direction of opening and closing a mold of the injection molding machine, wherein the guide includes:
a first guide part fixed to a machine base of the injection molding machine;
a second guide part provided for the machine base and configured to be removable from the machine base; and
a coupling configured to connect the first guide part and the second guide part so that the second guide part can be moved to a position over the first guide part,
wherein the second guide part is located on the machine base more toward a closing direction of the safety door than the first guide part is.
2. The injection molding machine according to
3. The injection molding machine according to
the predetermined position is the position where the second guide part is laid over the first guide part; and
the stopper is configured to block the movement of the safety door in the closing direction when the second guide part is located at the predetermined position.
4. The injection molding machine according to
6. The injection molding machine according to
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This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2018-131545 filed on Jul. 11, 2018, the contents of which are incorporated herein by reference.
The present invention relates to an injection molding machine having a safety door.
Japanese Laid-Open Patent Publication No. 06-297534 discloses a rear safety door device of an injection molding machine provided with a guide for slidably guiding the safety door in the direction along which the mold is opened and closed in the injection molding machine.
However, with the rear safety door device disclosed in Japanese Laid-Open Patent Publication No. 06-297534, when the operator opens the safety door to work a device inside the injection molding machine, the guide hinders the operator's work so that there is a problem that the workability cannot be improved.
The aspect of the present invention resides in an injection molding machine comprising a safety door and a guide configured to slidably guide the safety door in a direction of opening and closing a mold of the injection molding machine, wherein the guide includes: a first guide part fixed to a machine base of the injection molding machine; a second guide part arranged on the safety door's closing direction side of the first guide part and configured to be removable from the machine base; and a coupling configured to connect the first guide part and the second guide part so that the second guide part can be moved to a position over the first guide part.
According to the present invention, when the operator opens the safety door to work the device inside the injection molding machine, the guide will not get in the way, so that the workability can be improved.
The above and other objects, features, and advantages of the present invention will become more apparent from the following description when taken in conjunction with the accompanying drawings in which a preferred embodiment of the present invention is shown by way of illustrative example.
An injection molding machine according to the present invention will be detailed below by describing a predetermined embodiment with reference to the accompanying drawings.
The injection molding machine 10 includes a clamping unit 14, an injection unit 16 and a machine base 15 as shown in
The clamping unit 14 is a device that opens and closes a mold during injection molding and generates a mold clamping force. The mold is opened and closed in the X-axis direction. The clamping unit 14 is arranged on a portion of the negative X side of the machine base 15. The machine base 15 is provided with a first guard 13 which surrounds the clamping unit 14. An unillustrated opening is formed in a portion on the positive X side of the negative Y-side wall of the first guard 13. This opening exposes the mold in the clamping unit 14. A safety door 19 capable of opening and closing the opening is provided for the machine base 15.
The injection unit 16 is a device for injecting a resin through a built-in cylinder 27 in injection molding. The injection unit 16 is arranged on a portion of the positive X side of the machine base 15. The machine base 15 is provided with a second guard 21 that surrounds the injection unit 16. An opening 11 is formed in a portion on the negative X side of the negative Y-side wall of the second guard 21. A safety door 18 capable of opening and closing the opening 11 is provided for the machine base 15.
The resin material ejected from the injection unit 16 is injected into the cavity of the mold. A resin molded article is formed by filling the cavity with the resin material.
At this stage, the operator operates an operation panel 17 arranged between the safety door 18 and the safety door 19 that are closed (in a state where the corresponding openings are closed by the respective safety doors), so as to actuate the injection molding machine 10 to mold a resin molded product. Thus, the safety of the operator or the like who works around the injection molding machine 10 can be secured at the time of operating the injection molding machine 10.
On the other hand, when the injection molding machine 10 is not in operation, the operator opens the safety door 18 and the safety door 19 as appropriate and performs maintenance, inspection, and other operations on the injection unit 16 and the clamping unit 14.
As shown in
The safety door 18 includes a door member 22 and a handle 24. A groove 23 extending in the X-axis direction is formed, along substantially the entire edge in the X-axis direction in a lower end portion of the inner face (on the positive Y side) of the door member 22.
The guide 20 is provided so as to project to the negative Y side from the machine base 15. The guide 20 includes a first guide part 30, a second guide part 32 provided on the closing direction (negative X-direction) side of the safety door 18 with respect to the first guide part 30, and a third guide part 35 provided on the closing direction (negative X-direction) side of the safety door 18 with respect to the second guide part 32.
The first guide part 30 and the third guide part 35 are fixed to the machine base 15. The second guide part 32 is provided to be removable (separable) from the machine base 15. The second guide part 32 is connected with the first guide part 30 by a hinge (coupling) 33 so as to be movable to the upper (positive Z-direction) side of the first guide part 30 from the guiding position for guiding the movement of the safety door 18 (see
The first guide part 30 includes a first rail 34 fitted in the groove 23 of the safety door 18 as shown in
The second guide part 32 includes a second rail 36 fitted in the groove 23 of the safety door 18 when located in the guiding position, as shown in
The third guide part 35 includes a third rail 37 fitted in the groove 23 of the safety door 18 as shown in
When the second guide part 32 is located in the guiding position, the first rail 34, the second rail 36 and the third rail 37 substantially form a single guide rail slidably guiding the safety door 18 (see
In order to operate the above-described injection unit 16, the operator manually opens the safety door 18 (see
That is, the second guide part 32 has a stopper that prevents movement of the safety door 18 in its closing direction when the safety door 18 is located on the opening side and when the second guide part 32 is moved to a predetermined position over the first guide part 30. At the predetermined position, the second guide part 32 is positioned to be laid over the first guide part 30, so that the stopper stops the movement of the safety door 18 in its closing direction (negative X-direction) when the second guide part 32 is located at the predetermined position. Additionally, the stopper herein is the end on the opening direction (positive X-direction) side of the second guide part 32 when the second guide part 32 is located at the predetermined position (more specifically, the end 36A on the positive X side of the second rail 36).
As described above, when the injection molding machine 10 is not in operation, the operator, as appropriate, opens the safety door 19 and performs maintenance, inspection, and other operations on the clamping unit 14. Therefore, a guide having the same configuration as the guide 20 may be provided which slidably guides the safety door 19 in the mold opening/closing direction (X-axis direction). As a result, when the operator performs an operation on the clamping unit 14, the guide will not get in the way, and the workability can be improved.
The configuration of the injection molding machine 10 described in the above embodiment can be modified as appropriate.
In the above embodiment, the positive X-side end 36A of the second rail 36 of the second guide part 32 folded with respect to the first guide part 30 is used as the stopper for stopping the movement of the safety door 18 to the negative X side. But other configurations may be considered.
For example, in an injection molding machine 10A according to a 1st example of the variation 1 shown in
For example, in the injection molding machine 10B according to a 2nd example of the variation 1 shown in
In the above embodiment and the variation 1, the second guide part 32 is folded up with respect to the first guide part 30 to prevent the safety door 18 from moving in the closing direction (negative X-direction), but other configurations can be considered. For example, in an injection molding machine 10C according to a variation 2 shown in
In the above-mentioned embodiment and each variation, although the 1st guide part 30 and the 2nd guide part 32 are coupled by the hinge 33, other configurations may be considered.
As an example, in an injection molding machine 10D according to a 1st example of the variation 3 shown in
As example, in an injection molding machine 10E according to a 2nd example of the variation 3 shown in
The configurations of the safety door 18 and the guide 20 described in the above embodiment and the variations can be modified as appropriate. The point is that as long as the safety door 18 is slidably guided on the guide 20 in the X-axis direction, any configuration may be adopted. For example, a rail may be provided on the safety door 18 while a groove to which the rail is fitted may be formed in the guide 20.
The variations 1 to 4 may be arbitrarily combined as long as no technical inconsistency occurs.
The present invention is an injection molding machine (10, 10A to 10E) which includes: a safety door (18); a guide (20) configured to slidably guide the safety door (18) in a direction of opening and closing a mold of the injection molding machine (10, 10A to 10E). The guide (20) includes: a first guide part (30) fixed to a machine base (15) of the injection molding machine (10, 10A to 10E); a second guide part (32) arranged on the safety door (18)'s closing direction side of the first guide part (30) and configured to be removable from the machine base (15); and a coupling (33, 44, 46) configured to connect the first guide part (30) and the second guide part (32) so that the second guide part (32) can be moved to a position over the first guide part (30).
As a result, when the second guide part (32) is moved to the upper side of the first guide part (30) with the safety door (18) residing at the opening side, the opening (50) is created in the guide (20), so that the operator can put his/her body through the opening (50) and operate the device (16) inside the injection molding machine (10, 10A to 10E). Due to this arrangement, the guide (20) does not interfere with the operator when the operator opens the safety door (18) to handle the device (16) inside the injection molding machine (10, 10A to 10E) and thus work performance is improved.
The second guide part (32) may have a stopper (36A, 39, 43) configured to block the movement of the safety door (18) in the closing direction when the safety door (18) is located on the opening side and when the second guide part (32) is moved to a predetermined position over the first guide part (30). As a result, it is possible to block the movement of the safety door (18) in the closing direction with a simple configuration (without using a stopper mechanism or any other complicated mechanism).
The predetermined position may be a position where the second guide part (32) is laid over the first guide part (30), and the stopper (36A, 39, 43) may be configured to block the movement of the safety door (18) in the closing direction when the second guide part (32) is located in the predetermined position. Thereby, the movement of the safety door (18) in the closing direction can be reliably prevented.
The stopper may be an end (36A) of the safety door's opening direction side of the second guide part (32) being located at the predetermined position. Thereby, the configuration of the coupling can be simplified without the need of providing a dedicated member that blocks the movement of the second guide part (32) in the closing direction.
The coupling may comprise a hinge (33). Thereby, the first guide part (30) and the second guide part (32) can be coupled with a simple configuration so that the second guide part (32) can be moved onto the first guide part (30).
The coupling may comprise a link mechanism (44, 46). Thereby, the first guide part (30) and the second guide part (32) can be coupled with a simple configuration so that the second guide part (32) can be moved onto the first guide part (30).
The present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the gist of the present invention.
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